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Field
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on rotating machinery, optimize grid performance, manage renewable energy integration, and dramatically increase the efficiency of energy conversion processes. Robotics and Autonomous Systems: Design and
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resource-constrained IoT and industrial systems to vehicular platforms, smart grids, and large-scale cloud and edge infrastructures. The unit has maintained an active and well-established research profile
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and EU-funded research projects, and has extensive know-how in 5G/6G communication platforms, IoT platforms, and Demand Response algorithms for the Smart Grid. IQU is also active in many EU-funded
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life issues, such as healthcare, space, mobility, human language technologies, agri-food, industry 4.0, and smart grids. This high level of knowledge transfer is achieved through both competitive
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industry. Context and motivation The green energy transition is increasingly digital: it relies on turning high-quality (smart meter, grid, or weather) data into actionable insights and better-informed
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between academia and industry by addressing research on daily life issues, such as healthcare, space, mobility, human language technologies, agri-food, industry 4.0, and smart grids. This high level of
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technologies, agri-food, industry 4.0, and smart grids. This high level of knowledge transfer is achieved through both competitive research projects and direct contracted research. Therefore, public and private
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Europe, in collaboration with research institutes and Industrial partners around Europe. WeForming and EnerTEF focus on the use of Inverter-Based Resources (IBRs) in smart grids. In the case of WeForming
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, and smart grids. This high level of knowledge transfer is achieved through both competitive research projects and direct contracted research. Therefore, public and private entities have access to a pool
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addressing research on daily life issues, such as healthcare, space, mobility, human language technologies, agri-food, industry 4.0, and smart grids. This high level of knowledge transfer is achieved through